A fungal-derived benzothiazole derivative overcomes osimertinib resistance in NSCLC by targeting SCD1

Osimertinib resistance remains a critical factor for treatment failure in non-small cell lung cancer (NSCLC), making it of great clinical significance to develop novel agents that can overcome this resistance. Natural products are invaluable sources for anti-drug discovery. In this study, we first report that 6-(2-hydroxyethyl) benzo[d]thiazol-4-ol (HBT), a benzothiazole derivative isolated from the endophytic fungus Aspergillus sp. 1022LEF, effectively reverses osimertinib resistance both in vitro and in vivo. Our results demonstrate that HBT effectively inhibits the proliferation of osimertinib-resistant cells by inducing ferroptosis, a novel form of iron-dependent cell death driven by lipid peroxidation. This effect is partially dependent on stearoyl-CoA desaturase 1 (SCD1). Further mechanistic studies revealed that HBT acts as a novel SCD1 inhibitor by directly binding to SCD1 and promoting its degradation, thereby leading to lipid peroxidation and ferroptosis. In vivo experiments showed that HBT treatment significantly suppressed tumor growth in PC9-OR xenograft models, as evidenced by reduced tumor volume and weight. In summary, our study not only identifies HBT as a promising therapeutic candidate for overcoming osimertinib resistance in NSCLC but also suggest that SCD1 is a potential target for combating such resistance.

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Publication Details

Journal
Natural Products and Bioprospecting
Published
2026-09-11
DOI
https://doi.org/10.1007/s13659-026-00645-9
Primary Topic
Ferroptosis and cancer prognosis
Type
article
Field-Weighted Citation Impact
0.00

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article

A fungal-derived benzothiazole derivative overcomes osimertinib resistance in NSCLC by targeting SCD1

Qiudi Deng, Mu Chen, Xueping Lei, Jieyao Liu et al.
Natural Products and Bioprospecting
Ferroptosis and cancer prognosis
article

A fungal-derived benzothiazole derivative overcomes osimertinib resistance in NSCLC by targeting SCD1

Qiudi Deng, Mu Chen, Xueping Lei, Jieyao Liu, B Li, Yuanyu Ke, Weisong Zhang, Zhiling Liu, Zhan Li, Mingjin Yang, Peng Zhang, Jinhua Zhu
article en

Abstract

Osimertinib resistance remains a critical factor for treatment failure in non-small cell lung cancer (NSCLC), making it of great clinical significance to develop novel agents that can overcome this resistance. Natural products are invaluable sources for anti-drug discovery. In this study, we first report that 6-(2-hydroxyethyl) benzo[d]thiazol-4-ol (HBT), a benzothiazole derivative isolated from the endophytic fungus Aspergillus sp. 1022LEF, effectively reverses osimertinib resistance both in vitro and in vivo. Our results demonstrate that HBT effectively inhibits the proliferation of osimertinib-resistant cells by inducing ferroptosis, a novel form of iron-dependent cell death driven by lipid peroxidation. This effect is partially dependent on stearoyl-CoA desaturase 1 (SCD1). Further mechanistic studies revealed that HBT acts as a novel SCD1 inhibitor by directly binding to SCD1 and promoting its degradation, thereby leading to lipid peroxidation and ferroptosis. In vivo experiments showed that HBT treatment significantly suppressed tumor growth in PC9-OR xenograft models, as evidenced by reduced tumor volume and weight. In summary, our study not only identifies HBT as a promising therapeutic candidate for overcoming osimertinib resistance in NSCLC but also suggest that SCD1 is a potential target for combating such resistance.

Natural Products and BioprospectingVol. 16(1)
Second Affiliated Hospital of Guangzhou Medical University (CN), Tobacco Research Institute (CN), Guangdong-Hongkong-Macau Joint Laboratory of Collaborative Innovation for Environmental Quality (CN), Guangdong Institute for Drug Control (CN), State Key Laboratory of Respiratory Disease (CN), Guangzhou Medical University (CN)
National Natural Science Foundation of China, Taishan Scholar Foundation of Shandong Province, Foundation for Distinguished Young Talents in Higher Education of Guangdong, Basic and Applied Basic Research Foundation of Guangdong Province
Good health and well-being
Openalex Percentile: Top 11%
Ferroptosis and cancer prognosis
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